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Influence of trace SF6 on discharge characteristics of SF6/N2 gas mixture under lightning impulse

机译:痕量SF6对雷击下SF6 / N2气体混合物放电特性的影响

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As one kind of synergistic effect gas, the discharge characteristics of SF/N gas mixtures would be influenced significantly by trace amounts of SF. That is, the discharge characteristics of pure N is quite different from that of SF/N gas mixtures with relatively low content of SF. For the application of SF/N gas mixtures in power system equipment, this paper studied on the discharge characteristics of SF/N gas mixtures with low SF mixing ratio in extremely non-uniform electric field under positive and negative lightning impulse. Meanwhile, the characteristic of SF/N gas mixtures were compared with that of pure N and SF. The experimental results indicate that the 50% breakdown voltage increases linearly with the rise of gas pressure under negative lightning impulse, and the rising rate of breakdown voltage with pure N is greater than SF/N gas mixtures even greater than pure SF gas. At high gas pressure, the 50% breakdown voltage of pure N is higher than that of SF/N gas mixtures, that is to say, the negative synergistic effect appeared. Under positive lightning impulse, the influence of gas pressure on 50% breakdown voltage is weaker, but the N-curve characteristic appeared because of the effect space charge. Meanwhile, the negative synergistic effect also appeared under positive lightning impulse at high gas pressure. The experimental results indicate that the breakdown time delay of pure N is much longer than that of SF/N gas mixtures with 1% SF mixing ratio because of the obvious difference between the formative time delay of N and SF/N gas mixtures. The phenomenon of breakdown time delay demonstrates that the discharge form of N is different from that of SF/N gas mixtures, that is to say, the streamer propagation changes to streamer-leader propagation.
机译:作为一种协同效果气体,SF / N气体混合物的放电特性将通过痕量的SF显着影响。也就是说,纯N的放电特性与具有相对较低的SF含量的SF / N气体混合物的放电特性与SF含量相对较低的不同。对于电力系统设备中的SF / N气体混合物的应用,本文研究了在正极和负闪电下极其不均匀电场的SF / N气体混合物的放电特性。同时,将SF / N气体混合物的特性与纯N和SF的特性进行了比较。实验结果表明,50 %击穿电压随着负雷电脉冲下的气体压力的升高而线性增加,并且纯N的击穿电压的上升速率大于SF / N气体混合物,甚至大于纯SF气体。在高气体压力下,纯N的50 %击穿电压高于SF / N气体混合物的50 %击穿电压,也就是说,出现负协同效应。在正闪电脉冲下,气体压力对50 %击穿电压的影响较弱,但由于效果空间电荷而出现N曲线特性。同时,在高气体压力下,负协同效应也出现在正闪电脉冲下。实验结果表明,由于N和SF / N气体混合物的形成时间延迟之间的明显差异,纯N的击穿时间延迟远大于具有1×%的SF / N气体混合物的液体混合比。击穿时间延迟的现象表明,N的排出形式与SF / N气体混合物的排出形式不同,也就是说,流媒体传播变为飘倾的领导传播。

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